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1589906-2 TE Connectivity (1589906-2) PX080SC3CWC25N = Coax
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2157480-3 TE Connectivity (2157480-3) AMPLIMITE IP67,SZ3, 109, 25 POS,IFS,PLUG
1-1589951-3 TE Connectivity (1-1589951-3) STM065L2AN = SMT Conn
8-1589777-6 TE Connectivity (8-1589777-6) STM015SC2DM018N = Wdualobe
2157481-5 TE Connectivity (2157481-5) AMPLIMITE IP67, SZ5, 109, 50 POS, RCPT

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ABLSG-10.000MHZ-D-2-Y-T Abracon Corporation Avnet 0 $0.28 $0.17
ABLSG-10.000MHZ-D-2-Y-T Abracon Corporation Farnell element14 0 £0.34 £0.34
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ABLSG-10.000MHZ-D2Y-T Abracon Corporation Future Electronics 0 $0.32 $0.31

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ABLSG-10.000MHZ-D-2-Y-T datasheet (1)

Part Manufacturer Description Type PDF
ABLSG-10.000MHZ-D2Y-T Abracon Crystals, Crystals and Oscillators, CRYSTAL 10MHZ 18PF SMD Original PDF

ABLSG-10.000MHZ-D-2-Y-T Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2008 - Not Available

Abstract:
Text: D : -40°C ~ +85°C J(*): -40°C to +105°C K(*): -40°C to +125°C L(*): -55°C to +125°C Freq. Tolerance H5: ± 5 ppm 1: ± 10 ppm 7: ± 15 ppm 2 : ± 20 ppm 3: ± 25 ppm 4: ± 30 ppm Freq. Stability U: ± 10


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PDF HC/49US 579545MHz 00MHz 01MHz options949-546-8001 ISO9001
2008 - AT49

Abstract:
Text: : -10°C ~ +60°C B: -20°C ~ +70°C C: -30°C ~ +70°C N: -30°C ~ +85°C D : -40°C ~ +85°C J(*): -40°C to , : ± 15 ppm 2 : ± 20 ppm 3: ± 25 ppm 4: ± 30 ppm * 10 to +60C only. * Option A, E,B, and 0 to


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PDF HC/49US ISO9001 AT49 crystal 24mhz
Not Available

Abstract:
Text: ~ +60°C B: -20°C ~ +70°C C: -30°C ~ +70°C N: -30°C ~ +85°C D : -40°C ~ +85°C J(*): -40°C to , ppm 7: ± 15 ppm 2 : ± 20 ppm 3: ± 25 ppm 4: ± 30 ppm * 10 to +60C only. * Option A, E,B


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PDF HC/49US ISO9001
Not Available

Abstract:
Text: ~ +60°C B: -20°C ~ +70°C C: -30°C ~ +70°C N: -30°C ~ +85°C D : -40°C ~ +85°C J(*): -40°C to , ppm 7: ± 15 ppm 2 : ± 20 ppm 3: ± 25 ppm 4: ± 30 ppm * 10 to +60C only. * Option A, E,B


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PDF HC/49US ISO9001
2008 - Not Available

Abstract:
Text: D : -40°C ~ +85°C J(*): -40°C to +105°C K(*): -40°C to +125°C L(*): -55°C to +125°C Freq. Tolerance H5: ± 5 ppm 1: ± 10 ppm 7: ± 15 ppm 2 : ± 20 ppm 3: ± 25 ppm 4: ± 30 ppm


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PDF HC/49US ISO9001
Not Available

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Text: No file text available


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reticon tad-32

Abstract:
Text: F ig ure 2 . Tim e Dom ain D isp lay o f the Same S ign a l S how n in F ig ure 1. (O scillo s c o p , SIN( yt ) SUM MING AMPLIFIER .COS(x-y )t - C O S (x+ y)t . 2 UPPER SIDEBAND AUDIO OUTPUT C O S (x , FIXED DELAY N/ 2 SAMPLES REFERENCE CHANNEL RETICON TAD-32 F ig u re 16. Broadband 90° A u d io Phase S , advantages of S S B over full-carrier A M and F M are well docum ented (R ef 1 & 2 ). T h e use of m ulti-pole , to prevent spectral shifting of the audio signal. Errors in this frequency will result in a "Donald D


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PDF AN1981 SA/NE602 reticon tad-32 TAD32 TAD-32 NE602 application note hef4013 advantages and disadvantage of demodulation i n s hef4750 application NE5534 signetics rf ne602 NE602 application
Not Available

Abstract:
Text: No file text available


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1997 - AN198 Designing with the SA602

Abstract:
Text: Single-Sideband Signals, D . Weaver, Proceedings of the IRE, 1956. 13. 2 Meter Transmitter Uses Weaver , applications, yet the advantages of SSB over full-carrier AM and FM are well documented (Ref 1 & 2 ). The use , . 10MHz CARRIER SR00797 Figure 2 . Time Domain Display of the Same Signal Shown in Figure 1 , because it simplifies receiver circuitry. Figure 2 shows the time domain "envelope" of the same AM signal. The 1kHz tone example of Figures 1 and 2 serves as a simple illustration of an AM signal. Typically


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PDF AN1981 AN198 Designing with the SA602 SSB Receiver hef4750 application SA5514 4013 FLIP FLOP APPLICATION DIAGRAMS SIGNETICS* an198 NE602 application note SA602 SA5514 quad op-amp AN198 SA602
SIGNETICS* an198

Abstract:
Text: frequency will result in a " D o n a ld D u ck" sound which can render the signal unintelligible fo r la rge frequency errors. LOWER s to e M N D UPPER SIDEBAND 9 .9 M M H I 10.000MHz 10.001 M H , eaver M o d u lation, Norm Bernstein, Ham Radio, July, 1985. 6. 7. 8. 2 . 3. 4. 9. D , over full-carrier AM and FM are welldocum ented (Ref 1 & 2 ). The use of multipole filters can now be , generation and detection. Since they are reciprocal operations, the circuitry for generation and d etection


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PDF AN1981 AN198) SIGNETICS* an198 BLOCK DIAGRAM NE602 SSB Detector NE602 mixer hef4750 NE602 ic HEF4013 AN198 Signetics HEF4066 am ssb receiver NE5205
2007 - AVR341

Abstract:
Text: order to create a set of linear equations. X D1 = A( X T 1 ) + B( YT 1 ) + C X D 2 = A( X T 2 ) + B( YT 2 ) + C X D 3 = A( X T 3 ) + B ( YT 3 ) + C YD1 = D ( X T 1 ) + E ( YT 1 ) + F YD 2 = D ( X T 2 ) + E ( YT 2 ) + F 16 AVR341 8091A-AVR-07/07 AVR341 YD 3 = D ( X T 3 ) + E ( YT 3 ) + F Resolving the linear equations to get the calibration coefficient values: A= ( X D1 - X D 3 )( YT 2 - YT 3 ) - ( X D 2 - X D 3 )( YT 1 - YT 3 ) ( X T 1 - X T 3 )( YT 2 - YT 3 ) - ( X T 2 - X T 3 )( YT 1 -


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PDF AVR341: 091A-AVR-07/07 AVR341 atmel capacitive touch screen theory touch screen avr atmel atmega88 touch screen sample code adc store avr atmel 4 wire resistive touch controller resistive touch screen theory touch screen ADC atmel atmega88 sleep capacitive touch Atmel touchscreen
2009 - Not Available

Abstract:
Text: G B D 8 4 0 YT B D 8 4 5 YT B D 8 5 0 YT B D 8 6 0 YT B D 8 8 0 YT B D 8 9 0 YT B D 8 1 0 0 YT B D 8 1 5 0 YT B D 8 2 0 0 YT UNITS V V V A A 40 28 40 45 31.5 45 50 35 , Rated DC Blocking Voltage TJ=100O C Typical Thermal Resistance O p e r a t i n g J u n c t i o n a n d S , , C Fig.1- FORWARD CURRENT DERATING CURVE 1 2 5 10 20 50 100 NO. OF CYCLE AT 60Hz Fig. 2 - MAXIMUM NON - REPETITIVE SURGE CURRENT 10 INSTANTANEOUS REVERSE CURRENT, mA 40


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PDF BD840YT BD8200YT 2002/95/EC O-251AB O-251AB MIL-STD-750
2009 - bd820

Abstract:
Text: -65 to +175 B D 8 1 0 0 YT B D 8 1 5 0 YT B D 8 2 0 0 YT UNITS 0.90 V mA O C/W O , otherwise specified. Resistive or inductive load. PARAMETER SYMBOL B D 8 4 0 YT B D 8 4 5 YT B D 8 5 0 YT B D 8 6 0 YT B D 8 8 0 YT B D 8 9 0 YT Maximum Recurrent Peak Reverse , RJC 5 Typical Thermal Resistance O p e r a t i n g J u n c t i o n a n d S t o r a g e Te m p e , 100 80 60 40 20 0 O CASE TEMPERATURE, C 1 2 5 10 20 50 100 NO. OF


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PDF BD840YT BD8200YT O-251AB 2002/95/EC O-251AB bd820
YT-45 diode

Abstract:
Text: ABB @YBB @PBB @[BB MNJK< O @BBB D G'+ 2 )'5' ?+,5% 91& *14()4515- 10%&+()14I MNDC O PQB D G-)4H , - N?` O YT S6R MN O @TBB D N?` O @ YT S6 N?` O @ YT S6 '+2H YL@ '+2H @L@ '+2H BLZ C C 'b , ?` O @ YT S6R CJE O CJJKR CEE O CEJK '+2H TB ' D (8: N?` O YT S6R Mc O @ DR :)cW:( O @ DWd- @ d - (8& CE O BL[Z e CEJK @ d - G:)W:(I*& G:?W:(I*& (f M$ N?` O @ YT S6 N?` O , DWdCWdd'D Mg N?` O YT S6R Jc O VV bR (30H W '+2H TBB W YBBB ' D CcN McN CcE N?` O YT S6R


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PDF SKT493 YT-45 diode
2012 - 7N1A

Abstract:
Text: FREQUENCY(MHz) RDC<0.07Ω SRF: 10000MHz IDC:850 mA 50 0.5 80 2 10 60 1 2.5 20 , 1000 FREQUENCY(MHz) RDC<0.16Ω SRF: 10000MHz IDC:550 mA Q 2 30 0 5 1 100 1000 , CHQ0603T-2N6B-HU 30 70 2 1000 5 FREQUENCY(MHz) RDC<0.28Ω SRF: 10000MHz IDC:415 mA 40 100 FREQUENCY(MHz) RDC<0.24Ω SRF: 10000MHz IDC:460 mA 40 2 10 10 80 3 20 1 , : 10000MHz IDC:680 mA 80 60 1.5 1 CHQ0603T-1N9B-HU 3 70 2 10 0 FREQUENCY(MHz


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PDF CHQ0603 1900MHz 2600MHz 2300MHz 7N1A LIM55C-T10.000MHZ
2007 - TC0306A

Abstract:
Text: Resonator 50 To 50 Network Analyzer A C D F TC0306A v1 2 Golledge Electronics Ltd , 100 Fax: +44 1460 256 101 www.golledge.com 1000.0MHz SAW Resonator Part No: MA09355 Model , 2 .DC voltage: 12 V 3.Operating Temperature: -40°C to +85°C 4.Storage Temperature: -40°C to +85°C , 1000 1.5 1000.125 2.0 fF H Ohm pF ppm/c* 2 deg.C - 0.969 26.13 20.73 2.06 0.032 25 SMD 3.8X3.8X1.4mm - - D . EQUIVALENT CIRCUIT: One-Port Resonator: Source Impedance 50


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PDF MA09355 TC0306A TC0306A 10000MHz
2012 - Not Available

Abstract:
Text: FREQUENCY(MHz) RDC<0.07Ω SRF: 10000MHz IDC:850 mA 50 0.5 80 2 10 60 1 2.5 20 , 1000 FREQUENCY(MHz) RDC<0.16Ω SRF: 10000MHz IDC:550 mA Q 2 30 0 5 1 100 1000 , CHQ0603T-2N6B-HU 30 70 2 1000 5 FREQUENCY(MHz) RDC<0.28Ω SRF: 10000MHz IDC:415 mA 40 100 FREQUENCY(MHz) RDC<0.24Ω SRF: 10000MHz IDC:460 mA 40 2 10 10 80 3 20 1 , : 10000MHz IDC:680 mA 80 60 1.5 1 CHQ0603T-1N9B-HU 3 70 2 10 0 FREQUENCY(MHz


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PDF CHQ0603 1900MHz 2600MHz 2300MHz
Not Available

Abstract:
Text: -65 to +175 B D 8 1 0 0 YT B D 8 1 5 0 YT B D 8 2 0 0 YT UNITS 0.90 V mA O C/W O , otherwise specified. Resistive or inductive load. PARAMETER SYMBOL B D 8 4 0 YT B D 8 4 5 YT B D 8 5 0 YT B D 8 6 0 YT B D 8 8 0 YT B D 8 9 0 YT Maximum Recurrent Peak Reverse , RθJC 5 Typical Thermal Resistance O p e r a t i n g J u n c t i o n a n d S t o r a g e Te m p e , TEMPERATURE, C 1 2 5 10 20 50 100 NO. OF CYCLE AT 60Hz Fig.1- FORWARD CURRENT


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PDF BD840YT BD8200YT O-251AB 2002/95/EC O-251AB
2011 - 10.000MHZ

Abstract:
Text: Part Number Guide RoHs Compliant CCL-SM9 - 10.000MHz - B - 2 - 5 - F - R TOLERANCE/STABILITY vs. TEMP B . 50ppm / 100ppm C . 50ppm / 50ppm D . 25ppm / 100ppm E . 25ppm / 50ppm F . 25ppm / 25ppm H . 10ppm / 25ppm J . Customer Specified OPERATING TEMPERATURE 1 . 0OC to +70OC 2 , Ranges Available -55OC ~ +125OC 9.0MHz ~ 10.000MHz > 80 Max 10.000MHz ~ 13.000MHz > 60 Max 13.000MHz , Mechanical Specifications Comclok 10.000Mhz Unit : mm 15302 Bolsa Chica Street, Huntington Beach, CA


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PDF 000MHz 50ppm 100ppm 25ppm 10.000MHZ
YT-45

Abstract:
Text: TYPE N CONNECTORS SERIES YT A B C D Inches Inches Inches Inches cm. cm. cm. cm. 3.00 5.00 2.750 4.000 , in-phase power di viders, Series YT , have excellent phase and amplitude balance. The internal resistive element is a ceramic pad and can, therefore, handle relatively high values of CW and peak power. Series YT , DIVIDERS/COMBINERS, POWER 0.950-18 GHz SER IES YT FI6UHE I SER IES YT Temp. Infonnation , be provided. A special part number may be assigned. 2 . If type N connectors are required add N to the


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PDF MIL-E-5400, YT-45 YT-56 D3006M triangle KDI YT-55 yt41
Not Available

Abstract:
Text: ve rse C urre nt T J = 2 5 O C a t Ra te d D C B lo c k i ng Vo lta g e T J =1 0 0 O C IR 0 .0 5 20 R θJ C 5 .0 B D 5 4 5 YT B D 5 5 0 YT B D 5 6 0 YT B D 5 8 0 YT B D 5 9 0 YT B D 5 1 0 0 YT 0 .7 0 0 .7 4 0 .8 0 B D 5 1 5 0 YT B D 5 2 0 0 YT UNITS 0.9 V mA O , inductive load. PA RA ME TE R S YMB OL B D 5 4 0 YT Ma xi mum Re c urre nt P e a k Re ve rs e Vo , g e V RMS 28 3 1 .5 35 42 56 63 70 105 140 V Ma xi mum D C B lo


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PDF BD540YT BD5200YT O-251AB 2002/95/EC 2010-REV
2012 - TA1483A

Abstract:
Text: 1000.0MHz Part No: MP04734 C. FREQUENCY CHARACTERISTICS: Model: TA1483A Rev No: 1 TA1483A v1 2 , Park, ILMINSTER Somerset, TA19 9DQ, UK SAW Filter 1000.0MHz Part No: MP04734 A. MAXIMUM RATING: Model: TA1483A Rev No: 1 Electrostatic Sensitive Device 1. Input Power Level: 0dBm 2 . DC Voltage: 5V , Park, ILMINSTER Somerset, TA19 9DQ, UK SAW Filter 1000.0MHz Part No: MP04734 Model: TA1483A Rev No: 1 D . MEASUREMENT CIRCUIT: The matching circuit is real by actual passive components


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PDF MP04734 TA1483A 40MHz 9970M MP04734 murata SAW
2012 - Not Available

Abstract:
Text: www.q-tech.com High Stability Digital TCXO (Revision D , April 2012) (ECO# 10540) 2 HIGH STABILITY DIGITAL , Frequencies Page 1, 2 D Q-TECH Corporation - 10150 W. Jefferson Boulevard, Culver City 90232 - Tel , , 40, 80, 100 (See table on pg 2 for details) Q T 3 QT3103CRM-25.000MHz 1 0 3 C R M - 25.000MHz , . D . test (MIL-STD 883, Method 2020) · Phase Noise test (Static and under vibration) · Jitter test , (Revision D , April 2012) (ECO# 10540) 1 HIGH STABILITY DIGITAL TCXO Q-TECH CORPORATION SURFACE


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PDF 125MHz 20MHz) QT3103C-10 000MHz QT3103C-27 48MHz QT3103CU-27 480MHz
JIS B 7512

Abstract:
Text: YT -30018 SVC321 × 2 60 0.022F 6pin YT30202 1pin 100k 22F 2SK315 0.1F , YT -30202() 1-3 84T 7BRS-9286A() 4-6 2 1 2157-2239-649() 17T 4 6 13.()(20 )100MHz20-GND30pF (OSC) 14.2T 1400kHz 15.600kHz L400kHz600kHz, 0.047F 0.1F SVC321 × 2 YT , -3=224H 2T 1-2 6 1 2T YT -30018() 2 7BRS-8934A() 2T 2-3 4 2157-2239-518A , )IFT(I) YT -30042() +SFP450H() 3 4 3 1-2 2 4 69T 1-2 49T 4-6 27T


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PDF N1272F LA1135 LA1135M LA1135 1135MAMIC 380mVrms) 130dBfm 400Hz 25dBm 2SK315 JIS B 7512 2SC536 C1513 2sc930 BL-70 BFU450CN YT-30202 sfp450h LA-1500
2010 - Not Available

Abstract:
Text: ) . 2 3 4 / 5 # &6 4 &9 # 4 : ; 4 :# = &:5 3>? ,@ ) C8 & # !&'EFG & D 4 4 4 , #4 7 5 $ &9 / 2 9 9 7 $ $ 4 8 = 9 D B N7 N7 D D M O P ;P ! , YT ,+ ) Q2 [ H 3% Qg ! ! ! YTZ+G !T' d !Q !&& ) ! !&'-Fe ) !&'( E&' f % 5 Q , )( ) )( () !&' y!z N 4P = 4 H 3 4 N 5 4 # H 3 N :,+ ) N &PQ :,bb ) N &P !T' ) ` !Q YT ,+ ) 2 [Q YT , # :^\p ) N mP YT ,+ ) 2 [Q !&' ) 4 N 4P P N = 4 $ 5 4 # :^\p ) NYTP m) . /Q


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